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Published on: September 20, 2024
SOX2 regulates apoptosis through MAP4K4-survivin signaling pathway in human lung cancer cells
1School of Medicine, Nankai University, 94 Weijin Road, Tianjin 300071, China.
Abstract:
Previous studies have implicated cancer stem cells in tumor recurrence and revealed that the stem cell gene SOX2 plays an important role in the tumor cell resistance to apoptosis. Nonetheless, the mechanism by which SOX2 regulates apoptosis signals remained undefined. Here, we demonstrated the surprising finding that silencing of the SOX2 gene effectively induces apoptosis via the activation of death receptor and mitochondrial signaling pathways in human non-small cell lung cancer cells. Unexpectedly, reverse transcription-PCR analysis suggested that downregulation of SOX2 leads to activation of MAP4K4, previously implicated in cell survival. Evaluation of the apoptotic pathways revealed an increased expression of key inducers of apoptosis, including tumor necrosis factor-α and p53, with concurrent attenuation of Survivin. Although p53 appeared dispensable for this pathway, the loss of Survivin in SOX2-deficient cells appeared critical for the observed MAP4K4 induced cell death. Rescue experiments revealed that SOX2-silencing-mediated killing was blocked by ectopic expression of Survivin, or by reduction of MAP4K4 expression. Clinically, expressions of Survivin and SOX2 were highly correlated with each other. The results reveal a key target of SOX2 expression and highlight the unexpected context-dependent role for MAP4K4, a pluripotent activator of several mitogen-activated protein kinase pathways, in regulating tumor cell survival.
Insights
Silencing the SOX2 gene triggers apoptosis in non-small cell lung cancer cells by activating death receptor and mitochondrial pathways. This involves MAP4K4 activation and reduced Survivin, highlighting SOX2 as a therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Cell Death Pathways
Background:
- Cancer stem cells contribute to tumor recurrence and resistance to apoptosis.
- The stem cell gene SOX2 is implicated in this resistance, but its mechanism is unclear.
Purpose of the Study:
- To elucidate the mechanism by which SOX2 regulates apoptosis in non-small cell lung cancer (NSCLC).
- To investigate the role of MAP4K4 and Survivin in SOX2-mediated apoptosis.
Main Methods:
- Gene silencing of SOX2 in human NSCLC cells.
- Reverse transcription-PCR to analyze gene expression.
- Evaluation of death receptor and mitochondrial apoptotic pathways.
- Western blotting and rescue experiments.
Main Results:
- SOX2 silencing induced apoptosis via death receptor and mitochondrial pathways.
- Downregulation of SOX2 activated MAP4K4 and decreased Survivin expression.
- Loss of Survivin was critical for MAP4K4-induced cell death in SOX2-deficient cells.
- SOX2 and Survivin expression are clinically correlated.
Conclusions:
- SOX2 silencing effectively induces apoptosis in NSCLC cells.
- MAP4K4 activation and Survivin downregulation are key mediators of this process.
- SOX2 is a critical regulator of tumor cell survival, with context-dependent roles for MAP4K4.
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